Research field (2):
Inorganic and coordination chemistry
, Green/sustainable/environmental chemistry
Research theme for competitive and other funds (3):
2023 - 2026 CO2水素化によるメタノール直接合成に有効な触媒の開発
2020 - 2023 ギ酸からの水素発生反応に効果的な耐久性触媒の開発
2018 - 2020 水素貯蔵サイクルに効果的な固定化触媒の開発
Papers (34):
Ryoichi Kanega, Erika Ishida, Takaaki Sakai, Naoya Onishi, Akira Yamamoto, Hiroki Yasumura, Hisao Yoshida, Hajime Kawanami, Yuichiro Himeda, Yukari Sato, et al. An Aqueous Redox Flow Battery Using CO2 as an Active Material with a Homogeneous Ir Catalyst. Angewandte Chemie International Edition. 2023
Naoya Onishi, Yuichiro Himeda. Homogeneous catalysts for CO2 hydrogenation to methanol and methanol dehydrogenation to hydrogen generation. COORDINATION CHEMISTRY REVIEWS. 2022. 472. 214767
Mingxu Liu, Yuankang Xu, Yu Meng, Lijiao Wang, Hang Wang, Yichao Huang, Naoya Onishi, Lin Wang, Zhuangjun Fan, Yuichiro Himeda. Heterogeneous Catalysis for Carbon Dioxide Mediated Hydrogen Storage Technology Based on Formic Acid. ADVANCED ENERGY MATERIALS. 2022. 12. 31
Naoya Onishi, Yuichiro Himeda. CO2 hydrogenation to methanol by organometallic catalysts. Chem Catalysis. 2022. 2. 2. 242-252
Himeda Yuichiro, Kanega Ryoichi, Wang Lin, Onishi Naoya, Ertem Mehmed, Muckerman James, Fujita Etsuko. Hydrogen production by dehydrogenation of formic acid using iridium catalysts. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY. 2018. 255
Himeda Yuichiro, Onishi Naoya, Suna Yuki, Manaka Yuichi, Ertem Mehmed, Muckerman James, Fujita Etsuko. Hydrogenation of CO 2 using Cp*Ir complexes with azole- and azoline-type ligands. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY. 2016. 252
Himeda Yuichiro, Onishi Naoya, Ertem Mehmed, Tsuruzaki Akihiro, Manaka Yuichi, Muckerman James, Fujita Etsuko. Hydrogenation of CO2 and dehydrogenation of formic acid using Cp*Ir complexes with imidazoline ligands. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY. 2016. 251